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单克隆IgG冷球蛋白的特性:精细结构与形态学分析

Characterization of monoclonal IgG cryoglobulins: fine-structural and morphological analysis.

作者信息

Podell D N, Packman C H, Maniloff J, Abraham G N

出版信息

Blood. 1987 Feb;69(2):677-81.

PMID:3801676
Abstract

The morphology of the amorphous, gelatinous, and crystalline varieties of monoclonal IgG cryoglobulins was analyzed by light and transmission and scanning electron microscopy. Each cryoglobulin had a characteristic fine structure that correlated with its gross morphology. Transmission electron microscopy showed that the amorphous precipitates were random and disorganized molecular clumps. In contrast, cryogels were thin-walled, well-organized, and hydrated strawlike clusters, whereas cryocrystals formed tightly compacted, highly structured molecular clusters. Crystals that formed in blood produced rouleaux, and analysis by scanning electron microscopy indicated that the crystals could form thick-walled, branching, macromolecular nets that could physically trap cells. The morphological properties provided visual impressions by which cryoglobulins could cause clinical disease secondary to vascular occlusion produced by self-associated IgG cryoglobulin molecules.

摘要

通过光学显微镜、透射电子显微镜和扫描电子显微镜对单克隆IgG冷球蛋白的无定形、凝胶状和结晶状变体的形态进行了分析。每种冷球蛋白都有与其总体形态相关的特征性精细结构。透射电子显微镜显示,无定形沉淀物是随机且无序的分子团块。相比之下,冷凝胶是薄壁、组织良好且水合的稻草状聚集体,而冷晶体则形成紧密压实、高度结构化的分子聚集体。在血液中形成的晶体产生缗钱状,扫描电子显微镜分析表明,这些晶体可以形成厚壁、分支的大分子网络,从而物理性地捕获细胞。这些形态学特性提供了直观印象,通过这些印象可以看出冷球蛋白可导致由自缔合IgG冷球蛋白分子引起的血管闭塞继发的临床疾病。

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